Department of Physical Chemistry, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
J Phys Chem A. 2010 Feb 11;114(5):2059-72. doi: 10.1021/jp909967b.
Photoexcited states of three Rh(III) 5,10,15-tris(pentafluorophenyl)corroles coordinated by different axial ligands; namely, triphenylphosphine P(C(6)H(5))(3) group (1), pyridine C(6)H(5)N group (2), and two pyridine groups (3) were studied by X- and Q-band time-resolved electron paramagnetic resonance (TREPR) in frozen toluene and liquid crystal E-7. Transient mutations were utilized to identify multiplicity of the detected paramagnetic species. The spectra of 1 and 2 were assigned to triplet ((3)pipi*) states, while contributions of triplet ((3)dd and charge transfer (3)CT) and quintet ((5)dd) states were revealed in the spectrum of 3. The results are interpreted in terms of a peculiar nature of transition metal complexes with the unfilled d-shell, where close lying electronic states of different multiplicities may be mixed through configurational, spin-orbit, and vibronic coupling. From the EPR spectra, the spin-orbit coupling constant was estimated to be about 25 cm(-1). It is shown that different axial ligation of complexes shifts the relative energy of the excited states and, consequently, leads to population of different states. Plausible explanations of the effects governing unusual spectral and dynamic parameters of the photoexcited Rh corrole complexes are presented.
三种 Rh(III) 5,10,15-三(五氟苯基)卟啉配合物的光激发态,分别由不同的轴向配体配位:三苯基膦 P(C(6)H(5))(3)(1)、吡啶 C(6)H(5)N(2)和两个吡啶基团(3)。在甲苯的冷冻和液晶 E-7 中通过 X-和 Q-带时间分辨电子顺磁共振(TREPR)进行了研究。瞬态突变被用于鉴定所检测的顺磁物种的多重性。1 和 2 的光谱被分配给三重态((3)pipi*)态,而 3 的光谱则揭示了三重态((3)dd 和电荷转移(3)CT)和五重态((5)dd)态的贡献。结果根据过渡金属配合物具有未填满 d 壳层的特殊性质进行了解释,其中不同多重态的电子态可能通过组态、自旋轨道和振动态耦合混合。从 EPR 光谱中,估计出自旋轨道耦合常数约为 25 cm(-1)。结果表明,配合物的不同轴向配位会改变激发态的相对能量,从而导致不同状态的填充。提出了对控制 Rh 卟啉配合物光激发异常光谱和动态参数的效应的合理解释。